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通过组合选择性15N标记在15N-HSQC谱中进行氨基酸类型鉴定。

Amino-acid type identification in 15N-HSQC spectra by combinatorial selective 15N-labelling.

作者信息

Wu Peter S C, Ozawa Kiyoshi, Jergic Slobodan, Su Xun-Cheng, Dixon Nicholas E, Otting Gottfried

机构信息

Research School of Chemistry, Australian National University, Canberra, ACT, 0200, Australia.

出版信息

J Biomol NMR. 2006 Jan;34(1):13-21. doi: 10.1007/s10858-005-5021-9.

Abstract

The efficiency of cell-free protein synthesis combined with combinatorial selective 15N-labelling provides a method for the rapid assignment of 15N-HSQC cross-peaks to the 19 different non-proline amino-acid types from five 15N-HSQC spectra. This strategy was explored with two different constructs of the C-terminal domain V of the tau subunit of the Escherichia coli DNA polymerase III holoenzyme, tauC16 and tauC14. Since each of the five 15N-HSQC spectra contained only about one third of the cross-peaks present in uniformly labelled samples, spectral overlap was much reduced. All 15N-HSQC cross-peaks of the backbone amides could be assigned to the correct amino-acid type. Availability of the residue-type information greatly assisted the evaluation of the changes in chemical shifts observed for corresponding residues in tauC16 vs. those in tauC14, and the analysis of the structure and mobility of the C-terminal residues present in tauC16 but not in tauC14.

摘要

无细胞蛋白质合成与组合选择性15N标记相结合的方法,能够从五个15N-HSQC谱图中将15N-HSQC交叉峰快速分配到19种不同的非脯氨酸氨基酸类型。我们用大肠杆菌DNA聚合酶III全酶tau亚基C端结构域V的两种不同构建体tauC16和tauC14探索了该策略。由于五个15N-HSQC谱图中的每一个仅包含均匀标记样品中约三分之一的交叉峰,因此光谱重叠大大减少。主链酰胺的所有15N-HSQC交叉峰都可以分配到正确的氨基酸类型。残基类型信息的可用性极大地有助于评估tauC16中相应残基与tauC14中相应残基化学位移的变化,以及分析tauC16中存在但tauC14中不存在的C端残基的结构和流动性。

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